Mann Stefan A, Heide Juliane, Knott Thomas, Airini Razvan, Epureanu Florin Bogdan, Deftu Alexandru-Florian, Deftu Antonia-Teona, Radu Beatrice Mihaela, Amuzescu Bogdan
Cytocentrics Bioscience GmbH, Nattermannallee 1, 50829 Cologne, Germany.
CytoBioScience Inc., 3463 Magic Drive, San Antonio, TX 78229, USA.
J Pharmacol Toxicol Methods. 2019 Nov-Dec;100:106599. doi: 10.1016/j.vascn.2019.106599. Epub 2019 Jun 20.
The Comprehensive in vitro Proarrhythmia Assay (CiPA) initiative proposes a three-step approach to evaluate proarrhythmogenic liability of drug candidates: effects on individual ion channels in heterologous expression systems, integrating these data into in-silico models of the electrical activity of human cardiomyocytes, and comparison with experiments on human induced pluripotent stem cell-derived cardiomyocytes (hiPSC-CM). Here we introduce patch-clamp electrophysiology techniques on hiPSC-CM to combine two of the CiPA steps in one assay.
We performed automated patch-clamp experiments on hiPSC-CM (Cor.4U, Ncardia) using the CytoPatch™2 platform in ruptured whole-cell and β-escin-perforated-patch configurations. A combination of three voltage-clamp protocols allowed recording of five distinct ion current components (voltage-gated Na current, L-type Ca current, transient outward K current, delayed rectifier K current, and "funny" hyperpolarization-activated current) from the same cell. We proved their molecular identity by either Na replacement with choline or by applying specific blockers: nifedipine, cisapride, chromanol 293B, phrixotoxin-1, ZD7288. We developed a C++ script for automated analysis of voltage-clamp recordings and computation of ion current/conductance surface density for these five cardiac ion currents.
The distributions from n = 54 hiPSC-CM in "ruptured" patch-clamp vs. n = 35 hiPSC-CM in β-escin-perforated patch-clamp were similar for membrane capacitance, access resistance, and ion current/conductance surface densities. The β-escin-perforated configuration resulted in improved stability of action potential (AP) shape and duration over a 10-min interval, with APD90 decay rate 0.7 ± 1.6%/min (mean ± SD, n = 4) vs. 4.6 ± 1.1%/min. (n = 3) for "ruptured" approach (p = 0.0286, one-tailed Mann-Whitney test).
The improved stability obtained here will allow development of CiPA-compliant automated patch-clamp assays on hiPSC-CM. Future applications include the study of multi ion-channel blocking properties of drugs using dynamic-clamp protocols, adding a valuable new tool to the arsenal of safety-pharmacology.
全面体外致心律失常检测(CiPA)计划提出了一种三步法来评估候选药物的致心律失常风险:评估其对异源表达系统中单个离子通道的影响,将这些数据整合到人类心肌细胞电活动的计算机模拟模型中,并与人类诱导多能干细胞衍生心肌细胞(hiPSC-CM)实验进行比较。在此,我们介绍在hiPSC-CM上的膜片钳电生理技术,以便在一次检测中结合CiPA的两个步骤。
我们使用CytoPatch™2平台,在破裂全细胞和β-七叶皂苷穿孔膜片钳配置下,对hiPSC-CM(Cor.4U,Ncardia)进行自动膜片钳实验。三种电压钳方案的组合允许从同一个细胞记录五个不同的离子电流成分(电压门控钠电流、L型钙电流、瞬时外向钾电流、延迟整流钾电流和“起搏”超极化激活电流)。我们通过用胆碱替代钠或应用特异性阻滞剂(硝苯地平、西沙必利、色满醇293B、蜂毒素-1、ZD7288)来证明它们的分子特性。我们开发了一个C++脚本,用于自动分析电压钳记录,并计算这五种心脏离子电流的离子电流/电导表面密度。
54个hiPSC-CM在“破裂”膜片钳配置下与35个hiPSC-CM在β-七叶皂苷穿孔膜片钳配置下的膜电容、输入电阻和离子电流/电导表面密度分布相似。β-七叶皂苷穿孔配置在10分钟间隔内导致动作电位(AP)形状和时程的稳定性提高,APD90衰减率为0.7±1.6%/分钟(平均值±标准差,n = 4),而对于“破裂”方法为4.6±1.1%/分钟(n = 3)(p = 0.0286,单尾曼-惠特尼检验)。
此处获得的稳定性提高将有助于开发符合CiPA的hiPSC-CM自动膜片钳检测方法。未来的应用包括使用动态钳方案研究药物的多离子通道阻断特性,为安全药理学增添一种有价值的新工具。